Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Materials science, Anode, Lithium (medication), Electrolyte, Electrochemistry, and Nanotechnology.
Paving the Way for Next‐Generation All‐Solid‐State Batteries: Dry Electrode Technology
High-Loading Dry-Electrode for all Solid-State Batteries: Nanoarchitectonic Strategies and Emerging Applications
Toward Fast‐Charging and Dendritic‐Free Li Growth on Natural Graphite Through Intercalation/Conversion on MoS<sub>2</sub> Nanosheets
High-Nickel Cathodes with Mechanical and Interfacial Robustness via Tailored Concentration Gradients for Stable Li-Ion Batteries
Silver embedded porous carbon composite for high-performance lithium-metal anode
Progress and Challenges in Buffer Layers Between Cathode Materials and Sulfide Solid Electrolytes in All‐Solid‐State Batteries
3D Pathways Enabling Highly‐Efficient Lithium Reservoir for Fast‐Charging Batteries
Dry-Electrode All-Solid-State Batteries Fortified with a Moisture Absorbent
Two-in-one separator capturing and reutilizing polysulfides for high performance lithium-sulfur batteries
Bi-Morphological Form of SiO<sub>2</sub> on a Separator for Modulating Li-Ion Solvation and Self-Scavenging of Li Dendrites in Li Metal Batteries
Computational design of a mixed A-site cation halide solid electrolyte for all-solid-state lithium batteries
Surface coating engineering of Li-excess cathode additive of lithium-ion batteries for initial charge compensation
Enhanced Cycling Performance of a Li-Excess Li<sub>2</sub>CuO<sub>2</sub> Cathode Additive by Cosubstitution Nanoarchitectonics of Ni and Mn for Lithium-Ion Batteries
Electrode-level strategies enabling kinetics-controlled metallic Li confinement by the heterogeneity of interfacial activity and porosity
Growth Mechanism of Lithium Clusters on the Surface of Porous Carbon Framework for Lithium Metal Batteries
Defect mediated lithium adsorption on graphene-based silicon composite electrode for high capacity and high stability lithium-ion battery
Solid Electrolyte: Strategies to Address the Safety of All Solid‐State Batteries
Stabilizing the surface of Li2NiO2 cathode additive by coating amorphous niobium oxy-carbide for lithium-ion batteries
Enhanced lithiophilicity via bismuth-infused framework for advanced lithium metal batteries
Salt-philic and solvent-phobic
Solid Electrolyte: Strategies to Address the Safety of All Solid‐State Batteries
Nanoarchitectonics of lithium ion pathways through pores in a carbon framework for improving the storage capability and reversibility of lithium metal anode
Metal‐organic framework derived porous structures towards lithium rechargeable batteries
Mechanistic and nanoarchitectonics insight into Li–host interactions in carbon hosts for reversible Li metal storage
Porous carbon architectures with different dimensionalities for lithium metal storage
Intrinsic electrochemical activity of Ni in Ni3Sn4 anode accommodating high capacity and mechanical stability for fast-charging lithium-ion batteries
Regulation of ionic conductivity and lithium affinity of porous carbon framework in Li metal batteries through oxidized nitrogen groups
Nanoarchitectonics of the cathode to improve the reversibility of Li–O<sub>2</sub> batteries
Structurally stabilized lithium-metal anode via surface chemistry engineering
Design of cobalt catalysed carbon nanotubes in bimetallic zeolitic imidazolate frameworks